# Template file for 'llvm' pkgname=llvm version=3.1 wrksrc="${pkgname}-${version}.src" distfiles=" http://www.llvm.org/releases/${version}/llvm-${version}.src.tar.gz http://www.llvm.org/releases/${version}/clang-${version}.src.tar.gz" subpackages="libclang clang-analyzer clang clang-devel libllvm llvm-devel llvm-docs" build_style=gnu-configure configure_args="--disable-expensive-checks --disable-debug-runtime --enable-targets=all --enable-bindings=none --enable-optimize --enable-shared --enable-libffi --enable-llvmc-dynamic" # XXX: Investigate bindings support. makedepends="groff perl python libffi-devel" revision=1 short_desc="Low Level Virtual Machine" maintainer="Juan RP " homepage="http://www.llvm.org" license="BSD" checksum=" 1ea05135197b5400c1f88d00ff280d775ce778f8f9ea042e25a1e1e734a4b9ab ff63e215dcd3e2838ffdea38502f8d35bab17e487f3c3799579961e452d5a786" long_desc=" Low Level Virtual Machine (LLVM) is: 1. A compilation strategy designed to enable effective program optimization across the entire lifetime of a program. LLVM supports effective optimization at compile time, link-time (particularly interprocedural), run-time and offline (i.e., after software is installed), while remaining transparent to developers and maintaining compatibility with existing build scripts. 2. A virtual instruction set - LLVM is a low-level object code representation that uses simple RISC-like instructions, but provides rich, language-independent, type information and dataflow (SSA) information about operands. This combination enables sophisticated transformations on object code, while remaining light-weight enough to be attached to the executable. This combination is key to allowing link-time, run-time, and offline transformations. 3. A compiler infrastructure - LLVM is also a collection of source code that implements the language and compilation strategy. The primary components of the LLVM infrastructure are a GCC-based C & C++ front-end, a link-time optimization framework with a growing set of global and interprocedural analyses and transformations, static back-ends for many popular (and some obscure) architectures, a back-end which emits portable C code, and a Just-In-Time compilers for several architectures. 4. LLVM does not imply things that you would expect from a high-level virtual machine. It does not require garbage collection or run-time code generation (In fact, LLVM makes a great static compiler!). Note that optional LLVM components can be used to build high-level virtual machines and other systems that need these services." post_extract() { # Move clang files into the llvm source. if [ -d ${XBPS_BUILDDIR}/clang-${version}.src ]; then mv ${XBPS_BUILDDIR}/clang-${version}.src ${wrksrc}/tools/clang fi }